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Fiber contribution to modal damping of polymer matrix composite panels
S. Yarlagadda, G. Lesieutre
College of Engineering
Aerospace Engineering
Materials Research Institute (MRI)
Research output
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Contribution to journal
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Article
›
peer-review
16
Scopus citations
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Physics & Astronomy
polymer matrix composites
100%
damping
54%
fibers
38%
laminates
35%
ply orientation
27%
vibration mode
13%
Rayleigh-Ritz method
11%
bromine
9%
modal response
8%
twisting
8%
room temperature
8%
eigenvalues
6%
vibration
5%
vacuum
4%
composite materials
4%
temperature
2%
Earth & Environmental Sciences
damping
70%
polymer
53%
fiber
51%
matrix
41%
bromine
9%
temperature
8%
eigenvalue
8%
analytical method
6%
effect
3%
method
3%
analysis
2%
Engineering & Materials Science
Polymer matrix composites
90%
Damping
52%
Fibers
46%
Laminates
34%
Bromine
11%
Temperature
9%
Vacuum
6%
Composite materials
4%